摘要:
Provided is an organic light emitting device including a transparent electrode in which conducting filaments are formed and a method of manufacturing the same. In the organic light emitting device, a transparent electrode of an organic light emitting device is formed by using a resistance change material which has high transmittance with respect to light in a UV wavelength range and of which resistance state is to be changed from a high resistance state into a low resistance state due to conducting filaments, which current can flow through, formed in the material if a voltage exceeding a threshold voltage inherent in a material is applied to the material, so that it is possible to obtain the transparent electrode having high transmittance with respect to light in a UV wavelength range as well as light in a visible wavelength range generated by the organic light emitting device and having high conductivity.
摘要:
The invention describes an electro-luminescent wire comprising at least two conductors, having substantially longitudinal extensions, parallel to each other and insulated electrically, the conductors being supplied electrically to generate an electromagnetic field therebetween. A luminescent gelatinous substance covers at least one of the conductors and a transparent plastic film encloses the luminescent gelatinous substance and the conductors; the luminescent gelatinous substance emits light in presence of an electromagnetic field generated by the conductors.
摘要:
A lighting device formed of a FIPEL panel driven by electrical connection. For example, a frequency generator can create a frequency that creates a light output having any frequency in the spectrum. The light emitting panel can be flexible, and can be coded along a curved surface, such as the inner surface of a light bulb.
摘要:
A pixel arrangement structure for an organic light-emitting diode display panel includes a plurality of first subpixel rows and a plurality of second subpixel rows alternating with the first subpixel rows. Each first subpixel row includes first subpixels and second subpixels alternating with the first subpixels. Each second subpixel row includes alternately disposed first, second, and third subpixels. The number of the third subpixels in each second subpixel row is two times the number of the first or second subpixels in the second subpixel row. The subpixels of the same type in each of the first and second subpixel rows are not adjacent to each other. RGB pixels are formed by combinations of the subpixels in the first subpixel rows and the subpixels in the second subpixels. The color mixing effect is improved, and the resolution is increased.
摘要:
Display panel and displaying device are provided. Except for a first data line electrode layer on a first substrate, a display panel further includes a first insulating layer on the first data line electrode layer and a second data line electrode layer on the first insulating layer. The first data line electrode layer includes a plurality of first data lines, and the second data line electrode layer includes a plurality of second data lines respectively corresponding to the first data lines. A plurality of vias are disposed in the first insulating layer and expose a portion of the first data lines. The second data lines are electrically connected with the first data lines through the vias, which may decrease resistance of each data line, reduce the attenuation of a driving signal transmitted in the data lines far away from a driving circuit, and improve displaying effect of the display panel.
摘要:
A lighting portion is attached to a reflective liquid crystal display portion. A first transparent substrate and a second transparent substrate made of a glass substrate etc. are attached to each other with a sealing layer coated on those peripheral portions therebetween. The back surface of the first transparent substrate is attached to the reflective liquid crystal display portion, and an organic EL element is formed on the front surface of the first transparent substrate. The organic EL element is sealed in a space surrounded by the first transparent substrate, the second transparent substrate, and the sealing layer. The organic EL element is formed in a region corresponding to a pixel region of the reflective liquid crystal display portion. A desiccant layer is formed on the front surface of the second transparent substrate.
摘要:
Provided is a light-emitting device including a pair of substrates each of which includes a conductive layer, a light-emitting element, disposed between the pair of substrates, which includes a first electrode and a second electrode facing each other, and a resin layer, containing conductive particles, which fills a space between the substrates and electrically connects the conductive layers of the substrates to the first and second electrodes of the light-emitting element.
摘要:
A thin film transistor includes a gate electrode; a gate insulating film which contacts the gate electrode; an oxide semiconductor layer which includes a first region represented by In(a)Ga(b)Zn(c)O(d), wherein 0 0, 0 0, and a second region represented by In(p)Ga(q)Zn(r)O(s), wherein q/(p+q)>0.250, p>0, q>0, r>0, and s>0, and located farther than the first region with respect to the gate electrode and which is arranged facing the gate electrode with the gate insulating film provided therebetween. A source electrode and a drain electrode are arranged so as to be apart from each other and are capable of being electrically conducted through the oxide semiconductor layer.
摘要:
An electroluminescent (EL) device is described, comprising an EL material, an electrode and nanostructures. The nanostructures may form an interconnected network, and may be employed in the EL material and/or in the electrode. A second electrode is also described, wherein an electric field formed between the two electrodes excites phosphors in the EL material to produce light.
摘要:
An electroluminescent (EL) device is described, comprising an EL material, an electrode and nanostructures. The nanostructures may form an interconnected network, and may be employed in the EL material and/or in the electrode. A second electrode is also described, wherein an electric field formed between the two electrodes excites phosphors in the EL material to produce light.